Probabilistic Multi-Criteria Decision-Making for Circularity Performance of Modern Methods of Construction Products
Probabilistic Multi-Criteria Decision-Making for Circularity Performance of Modern Methods of Construction Products
The construction industry faces increasingly more significant pressure to reduce resource consumption, minimise waste, and enhance environmental performance. Towards the transition to a circular economy in the construction industry, one of the challenges is the lack of a standardised assessment framework and methods to measure circularity at the product level. To support a more sustainable and circular construction industry through robust and enhanced scenario analysis, this paper integrates probabilistic analysis into the coupled assessment framework; this research addresses uncertainties associated with multiple criteria and diverse stakeholders in the construction industry to enable more robust decision-making support on both circularity and sustainability performance. By demonstrating the application in three real-world MMC products, the proposed framework offers a novel approach to simultaneously assess the circularity and sustainability of MMC products with robustness and objectiveness.
Yiping Meng、Sergio Cavalaro、Frozan Dizaye Mohamed Osmani
环境管理建筑材料工业
Yiping Meng,Sergio Cavalaro,Frozan Dizaye Mohamed Osmani.Probabilistic Multi-Criteria Decision-Making for Circularity Performance of Modern Methods of Construction Products[EB/OL].(2025-04-10)[2025-05-18].https://arxiv.org/abs/2504.07850.点此复制
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